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Uncovering secrets behind low-resistance planing craft hull forms through optimization

机译:通过优化发现低阻力滑行船体形式背后的秘密

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摘要

There has always been significant interest within the naval architectural research community to identify ship hull forms with low resistance. While numerous design optimization frameworks have been proposed over the years to support the activity, very little attention has been paid towards the process of gaining an understanding of 'what makes a good ship design superior?' Furthermore, there have been limited attempts to identify computationally cheap indicators that can be used to distinguish between good and poor designs. A recent technique named discovery of innovative design principles, which is aimed at understanding the relationship between the design variables, is incorporated in this work. In this article, optimal high-speed planing craft hull forms with minimum calm-water resistance are identified through the use of three state-of-the-art optimization algorithms. Collections of such designs are then used to uncover insights into the underlying relationships between the variables. The importance of such relationships is further analysed to identify computationally cheap performance indicators that can be used in lieu of detailed calm-water resistance calculations. Such indicators are useful at the concept and preliminary design stages, where one needs to sieve efficiently through a number of candidate designs to identify the better ones for further analysis.
机译:海军建筑研究界一直对确定具有低抵抗力的船体形式有着浓厚的兴趣。尽管多年来提出了许多设计优化框架来支持这项活动,但是对于了解“什么才能使好的船舶设计出类拔萃?”的理解却很少。此外,已经进行了有限的尝试来识别可用于区分良好和不良设计的廉价计算指标。这项工作采用了一种最新技术,该技术名为“发现创新设计原理”,旨在了解设计变量之间的关系。在本文中,通过使用三种最先进的优化算法,可以确定出具有最小的静水阻力的最佳高速滑行船体形式。然后,使用此类设计的集合来发现有关变量之间潜在关系的见解。进一步分析了此类关系的重要性,以识别可用于代替详细的平静水阻力计算的廉价计算性能指标。此类指标在概念设计和初步设计阶段很有用,在此阶段,需要通过大量候选设计有效筛选以找出更好的设计,以进行进一步分析。

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